4.7 Article

Suppression of the USP10/CCND1 axis induces glioblastoma cell apoptosis

Journal

ACTA PHARMACOLOGICA SINICA
Volume 42, Issue 8, Pages 1338-1346

Publisher

NATURE PUBL GROUP
DOI: 10.1038/s41401-020-00551-x

Keywords

glioblastoma; USP10; cyclin D1; acevaltrate; apoptosis

Funding

  1. National Natural Science Foundation of China [81970194, 81770154, 81770215]
  2. Guangzhou Municipal Science and Technology Project [202002030059]
  3. Nanshan Scholar of Guangzhou Medical University

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Recent studies have shown that the expression of CCND1 and the dysregulation of USP10 play crucial roles in glioma progression. Interactions between CCND1 and USP10 affect cell cycle control and apoptosis in GBM cells, highlighting their potential as therapeutic targets for GBM patients. The natural product acevaltrate (AVT) derived from Valeriana jatamansi Jones has shown promising effects in inducing GBM cell apoptosis by suppressing USP10-mediated deubiquitination on CCND1.
Recent studies show that the expression of CCND1, a key factor in cell cycle control, is increased following the progress and deteriotation of glioma and predicts poor outcomes. On the other hand, dysregulated deubiquitinase USP10 also predicts poor prognosis for patients with glioblastoma (GBM). In the present study, we investigated the interplay between CCND1 protein and USP10 in GBM cells. We showed that the expression of CCND1 was significantly higher in both GBM tissues and GBM-derived stem cells. USP10 interacted with CCND1 and prevented its K48- but not K63-linked polyubiquitination in GBM U251 and HS683 cells, which led to increased CCND1 stability. Consistent with the action of USP10 on CCND1, knockdown of USP10 by single-guided RNA downregulated CCND1 and caused GBM cell cycle arrest at the G1 phase and induced GBM cell apoptosis. To implement this finding in the treatment of GBMs, we screened a natural product library and found that acevaltrate (AVT), an active component derived from the herbal plant Valeriana jatamansi Jones was strikingly potent to induce GBM cell apoptosis, which was confirmed by the Annexin V staining and activation of the apoptotic signals. Furthermore, we revealed that AVT concentration-dependently suppressed USP10-mediated deubiquitination on CCND1 therefore inducing CCND1 protein degradation. Collectively, the present study demonstrates that the USP10/CCND1 axis could be a promising therapeutic target for patients with GBMs.

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